Chinese Journal of Lasers, Volume. 42, Issue 6, 603006(2015)
Influence of Shielding Oxygen Content on Weld Homogeneity and Fluid Flow in Laser-Arc Hybrid Welding
[1] [1] Chen Wuzhu. Quality Control of Laser Welding and Cutting[M]. Beijing: China Machine Press, 2010.
[2] [2] Bagger C, Olsen F O. Review of laser hybrid welding[J]. J Laser Appl, 2005, 17(1): 2-14.
[3] [3] Cai Xiaoyu, Li Huan, Yang Lijun, et al.. Improvement of weld appearance of laser-short circuiting transfer metal-inert gas (MIG) hybrid welded aluminum alloys[J]. Chinese J Lasers, 2014, 41(5): 0503001.
[4] [4] Chen Yang, Wu Shikai, Xiao Rongshi. Microstructure and performance of CO2-MIG hybrid welding of SUS301L stainless steel[J]. Chinese J Lasers, 2014, 41(1): 0103004.
[5] [5] Moore P L, Howse D S, Wallach E R. Microstructures and properties of laser/arc hybrid welds and autogenous laser welds in pipeline steels[J]. Sci Technol Weld Join, 2004, 9(4): 314-322.
[6] [6] Fujinaga S, Ohashi R, Urakami T, et al.. Development of all position YAG laser butt welding process with filler wire[J]. Quarterly Journal of the Japan Welding Society, 2004, 22(3): 369-374.
[7] [7] Liu Z J, Kutsuna M, Xu G J. Microstructure and mechanical properties of CO2 laser-MAG hybrid weld of high strength steel[J]. Quarterly Journal of the Japan Welding Society, 2006, 24(4): 344-349.
[8] [8] Leimser M, Russ A, Dausinger F, et al.. Methods to Influence the Melt Pool Dynamics and the Element Distribution in Laser Welding of Aluminium Alloys with Filler Wire[A]. ICALEO, 2004, 531.
[9] [9] Zhao Lin, Tsukamoto Susumu, Arakane Goro, et al.. Distribution of wire feeding elements in laser-arc hybrid welds[J]. Chinese J Lasers, 2015, 42(4): 0406006.
[10] [10] Limmaneevichitr C, Kou S. Experiments to simulate effect of Marangoni convection on weld pool shape[J]. Weld J, 2000, 79(8): 231s-237s.
[11] [11] Fuhrich T, Berger P, Hügel H. Marangoni effect in laser deep penetration welding of steel[J]. J Laser Appl, 2001, 13(5): 178-186.
[12] [12] Mahrle A, Schmidt J. The influence of fluid flow phenomena on the laser beam welding process[J]. Int J Heat Fluid Fl, 2002, 23(3): 288-297.
[13] [13] Rai R, Roy G G, DebRoy T. A computationally efficient model of convective heat transfer and solidification characteristics during keyhole mode laser welding[J]. Journal of Applied Physics, 2007, 101(5): 054909.
[14] [14] Rai R, Kelly S M, Martukanitz R P, et al.. A convective heat-transfer model for partial and full penetration keyhole mode laser welding of a structural steel[J]. Metall Mater Trans A, 2008, 39(1): 98-112.
[15] [15] Naito Y, Mizutani M, Katayama S. Effect of oxygen in ambient atmosphere on penetration characteristics in single yttriumaluminum-garnet laser and hybrid welding[J]. J Laser Appl, 2006, 18(1): 21-27.
[16] [16] Cho W I, Na S J, Cho M H, et al.. Numerical study of alloying element distribution in CO2 laser-GMA hybrid welding[J]. Comp Mater Sci, 2010, 49(4): 792-800.
[17] [17] Sahoo P, Debroy T, Mcnallan M J. Suface tension of binary metal-surface active solute systems under conditions relevant to welding metallurgy[J]. Metall Trans B, 1988, 19(3): 483-491.
[18] [18] Zhao Y Z, Zhao H Y, Lei Y P, et al.. Theoretical study of Marangoni convection and weld penetration under influence of high oxygen content in base metal[J]. Sci Technol Weld Join, 2007, 12(5): 410-417.
Get Citation
Copy Citation Text
Zhao Lin, Tsukamoto Susumu, Arakane Goro, Zhang Yan, Tian Zhiling. Influence of Shielding Oxygen Content on Weld Homogeneity and Fluid Flow in Laser-Arc Hybrid Welding[J]. Chinese Journal of Lasers, 2015, 42(6): 603006
Category:
Received: Dec. 15, 2014
Accepted: --
Published Online: Sep. 23, 2022
The Author Email: Lin Zhao (hhnds@aliyun.com)